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Matching Pursuit Decomposition on Electrocardiograms for Joint Compression and QRS Detection

机译:心电图上的匹配追踪分解用于关节压缩和QRS检测

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The electrocardiogram (ECG) is relevant for several medical purposes. In this work, a novel analysis-by-synthesis method to process ECG signals is presented. It is based on the matching pursuit algorithm, which is employed here to decompose the ECG in the time domain. The main features of the ECG are extracted through a dictionary of triangular functions, due to their good correlation with the typical electrocardiographic waveforms, especially the R wave. The individual elements of this signal representation can be further employed for different processing tasks, such as ECG compression and QRS detection. Compression is required to store and transmit signals in situations related to massive acquisitions, frequent monitoring, high-resolution data, real-time needs or narrow bandwidths. QRS detection is not only essential to study the heart rate variability, but also the basis of automatic systems for ECG applications such as heartbeat classification or anomaly identification. In this study, it is shown how to employ the proposed processing approach to perform ECG compression and beat detection jointly. The resulting algorithm is tested over the whole MIT-BIH Arrhythmia Database, with a wide variety of ECG records, yielding both high compression and efficient QRS detection.
机译:心电图(ECG)与多种医学目的有关。在这项工作中,提出了一种新颖的综合分析方法来处理ECG信号。它基于匹配追踪算法,在此算法中用于在时域中分解ECG。由于心电图与典型的心电图波形(尤其是R波)具有良好的相关性,因此可通过三角函数字典提取ECG的主要特征。该信号表示的各个元素可以进一步用于不同的处理任务,例如ECG压缩和QRS检测。在与大量采集,频繁监视,高分辨率数据,实时需求或窄带宽有关的情况下,需要压缩来存储和传输信号。 QRS检测不仅对于研究心率变异性必不可少,而且对于ECG应用(例如心跳分类或异常识别)自动系统的基础。在这项研究中,显示了如何采用建议的处理方法来共同执行ECG压缩和心跳检测。生成的算法在整个MIT-BIH心律失常数据库中进行了测试,并具有多种ECG记录,可产生高压缩率和有效的QRS检测。

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